DocumentCode :
2596573
Title :
Measurement system for characterization of gas-liquid two-phase flow in micro-channel
Author :
Haifeng Ji ; Zhiyao Huang ; Baoliang Wang ; Haiqing Li
Author_Institution :
Dept. of Control Sci. & Eng., Zhejiang Univ., Hangzhou, China
fYear :
2009
fDate :
5-7 May 2009
Firstpage :
492
Lastpage :
497
Abstract :
A measurement system is developed for the parameter detection and flow characterization of gas-liquid two-phase flow in micro-channel. Electrical capacitance measurement system and optical measurement system are designed for the micro-channels with different inner diameters of 4.0 mm, 3.1 mm and 1.8 mm respectively. In experiment, bubble flow, stratified flow, slug flow and annular flow are observed. PSD (Power Spectrum Density) and PDF (Probability Density Function) methods are used to analyze the capacitance and optical signals. The results show that the stratified flow can not be observed in the pipe with inner diameter of 1.8 mm, and that the PSD and PDF curve can be used to characterize different flow regimes of gas-liquid two-phase flow in micro-channel. So the constructed measurement system is effective, and can be used to analyze flow characteristics and identify flow regime of gas-liquid two-phase flow in micro-channel.
Keywords :
bubbles; electric sensing devices; flow measurement; measurement systems; microchannel flow; optical sensors; pipe flow; probability; stratified flow; two-phase flow; annular flow; bubble flow; electrical capacitance measurement system; gas-liquid two-phase flow characterization; microchannel flow; optical measurement system; parameter detection; power spectrum density; probability density function method; size 1.8 mm; size 3.1 mm; size 4.0 mm; slug flow; stratified flow; Capacitance measurement; Electric variables measurement; Fluid flow measurement; Image motion analysis; Microchannel; Nitrogen; Optical design; Optical sensors; Pressure measurement; Signal analysis; capacitance; flow characterization; gas-liquid two-phase flow; measurement; micro-channel; optical;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation and Measurement Technology Conference, 2009. I2MTC '09. IEEE
Conference_Location :
Singapore
ISSN :
1091-5281
Print_ISBN :
978-1-4244-3352-0
Type :
conf
DOI :
10.1109/IMTC.2009.5168499
Filename :
5168499
Link To Document :
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